Consider samples of pure huydrogen and pure oxygen
Consider samples of pure H2(g) and pure O2(g), each at 300 K and 1 atm. For each of the following properties state which gas has the greater value
(a) v rms
(b) average E tr
(c) density
(d) mean free path
(e) collison rate with a wall of unit area
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Solve the Schrodinger equation to derive the wave function for x < 0 and x >= 0. Express the solution in terms of a single unknown constant.
For N2 at 25oC and 1.00 atm calculate the number of collisions per second made by one molecule; the number of collisions per second per cubic centimeter; compare these values to N2 at 25oC and 1.0*10^-6 torr using the values already calculated Sho
Neglecting the variation of T with altitude and using the average surface temperature of 290K and the number average molecular weight of 29 for air, calculate the atmospheric pressure at the top of this mountain. Compare with the observed average
Find the equation P(u, v) of a surface of revolution obtained by revolving a profile curve on the XY-plane about the Y-axis 360.
Dry air had a CO2 mole fraction of 0.00038 in 2007 (compared with 0.00032 in 1965). Calculate the total mass of CO2 that strikes 1 cm^2 of one side of a green leaf in 1 s in dry air at 25oC and 1.00 atm. Show all calculations.
Given two single-pole switches, write a program that will turn on an output when both switch A and switch B are closed.
A container of volume 1*10^-5 cm^3 holds three molecules of gas b, which we label b1, b2, and b3. In 1 second, there are two b1-b2 collisons, two b1-b3 collisions, and two b2-b3 collisons.
Assume a thermocouple generates a linear voltage of from 20 mV to 50 mV when the temperature changes from 750°F to 1250°F. How much voltage will be generated when the temperature of the thermocouple is at 1000°F?
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